CN2383043Y - Fluid meter - Google Patents

Fluid meter Download PDF

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Publication number
CN2383043Y
CN2383043Y CN 98231045 CN98231045U CN2383043Y CN 2383043 Y CN2383043 Y CN 2383043Y CN 98231045 CN98231045 CN 98231045 CN 98231045 U CN98231045 U CN 98231045U CN 2383043 Y CN2383043 Y CN 2383043Y
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CN
China
Prior art keywords
display
microprocessor cpu
measuring chute
meter
opto
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 98231045
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Chinese (zh)
Inventor
许雄
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Individual
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Individual
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Priority to CN 98231045 priority Critical patent/CN2383043Y/en
Application granted granted Critical
Publication of CN2383043Y publication Critical patent/CN2383043Y/en
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Expired - Fee Related legal-status Critical Current

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Abstract

An intelligent type elaborate dynamic metering instrument comprises three majorities which are a magnetic electricity converter or a photoelectric converter, a display and a metering bin. The mechanical kinetic energy generated by the medium measured flowing across the metering bin is transferred to the magnetic electricity converter or the photoelectric converter to induce out an electrical pulse signal corresponding to the flow quantity; the electrical pulse signals are processed by a circuit to display the results to realize dynamic metering of the fluid. The structure of the meter is simple, and the meter communicated with a microcomputer through the internet can realize automatic cluster control. The features of the meter lie in that high precision, strong intelligent performance and easy use and mounting. The meter is tested and qualified by the explosion-proof electric production quality supervising and detecting center. The meter is suitable for dynamically metering the places with explosive atmosphere danger.

Description

Fluid meter
The utility model relates to a kind of flowmeter.
Dynamic measurement is a job of generally carrying out in industrial and agricultural production, the sales process, and is then more general in dynamic measurement departments such as chemical industry, oil and feedwater.The POL measuring utensil kind of oil depot is single at present, and what generally adopt is rotz flowmeter, and its major defect has 2 points: the one, and motion is fragile under pressure reduction; The 2nd, no overall function of measuring can't be learnt the oil plant total volume of import and export in computer management system.Because these defectives bring difficulty for the quantity control of oil depot, the oily phenomenon of divulging of control occurs being difficult to.
The purpose of this utility model provides a kind of Fluid meter, and is not fragile, can directly show the total volume of import and export of fluid, can network with computer control system, realizes colony's control.This purpose is achieved in that it includes measuring chute, magnetoelastic transducer, the amplifier counter, microprocessor CPU and display equipment, measuring chute is the siphunculus that two ends have ring flange, in turbine is housed, middle part at measuring chute is provided with magnetoelastic transducer, magnetoelastic transducer is a round box, in coil and magnetic core are housed, the head of magnetoelastic transducer stretches in the measured hole at measuring chute loam cake middle part, magnetoelastic transducer output circuit end is connected with amplifier counter input end, the amplifier counter output is connected with microprocessor CPU, and the microprocessor CPU of making signal Processing is connected with display.
Also can go out another concrete scheme according to this principle design: it includes measuring chute, photoelectric commutator, the amplifier counter, microprocessor CPU and display, photoelectric commutator is by photoemitter, photelectric receiver and one is formed by central shaft and at the opto-electronic conversion dish that periphery has a through hole, measuring chute is the siphunculus that two ends have ring flange, the waist wheel is housed in the measuring chute, the waist wheel shaft is connected by the central shaft of transmission gear with the opto-electronic conversion dish, when being subjected to the masterpiece directed movement, the waist wheel drives the opto-electronic conversion disc spins, opto-electronic conversion dish periphery is provided with the pore area that can cut off and connect the light beam that photoemission cell sends, photoemitter is relative with photelectric receiver to be installed, be equipped with the opto-electronic conversion dish that can cut off and connect light beam in the position between them, the output circuit of photelectric receiver is connected with amplifier counter input end, the amplifier counter is connected with microprocessor CPU, and the microprocessor CPU of doing the signal operation processing is connected with display.
Owing to adopted technique scheme, the utility model has been realized goal of the invention preferably.Have characteristics such as easy to install, not fragile.
Description of drawings:
Fig. 1 is the structural drawing of first embodiment of the utility model
Fig. 2 is the structural drawing of another embodiment
This utility model includes measuring chute [12], magnetoelastic transducer [11], amplifier counter [6], discharge circuit, display driver circuit, circuit power, microprocessor CPU [7] and display equipment [8] in Fig. 1, measuring chute [12] is the siphunculus that two ends have ring flange, in turbine [19] is housed, turbine [19] is over against measured hole [10] center line.Baffle [18] is located turbine [19], upper end, middle part at measuring chute [12] is provided with magnetoelastic transducer [11], magnetoelastic transducer [11] is a round box, in coil and magnetic core are housed, the head of magnetoelastic transducer [11] stretches in the measured hole [10] at measuring chute [12] middle part, magnetoelastic transducer output circuit end is connected with amplifier counter input end [5], the amplifier counter output is connected with microprocessor CPU [7], the microprocessor CPU [7] of making signal Processing is connected with display [8] when the fluid measuring chute [12] of flowing through, promoting turbine [19] rotates, turbine [19] rotates the magnetic field generating period variation that makes magnetoelastic transducer [11] inductive coil, thereby produce the electric impulse signal corresponding with flow, electric impulse signal is sent to amplifier counter [6] and microprocessor CPU [7], after processing and amplifying, deliver to display [8] and show, realize the metering of fluid.
Magnetoelastic transducer [11] is sent into microprocessor CPU then and is carried out the frequency division calculation process after electric signal is delivered to known discharge circuit electric signal is carried out three grades of amplifications, signal is delivered to known display driver circuit again, and driving display [3] is made demonstration.The power unit of this circuit is by the three-terminal regulator block power supply, and its automatic power cutoff protector circuit is made up of switching tube, reverse blanking tube, chargeable battery.When the collector of switching tube obtained electricity, switching tube ended, and became closed condition, and electric current charges to chargeable battery through reverse blanking tube.When the collector terminal dead electricity of switching tube, the switching tube conducting, complete machine work is kept in the chargeable battery discharge.
Fig. 2 is another the concrete scheme that goes out according to this principle design: it includes measuring chute [12], photoelectric commutator [13], amplifier counter [6], discharge circuit, display driver circuit, circuit power, microprocessor CPU [7] and display [8], photoelectric commutator [13] is by photoemitter, photelectric receiver and one is formed by central shaft and at the opto-electronic conversion dish that periphery has a through hole, photoemitter is a luminotron, optoelectronic receiver is made up of a photodiode, measuring chute [12] is the siphunculus that two ends have ring flange, in waist wheel [15] is housed, waist wheel shaft [16] is connected by the central shaft of the opto-electronic conversion dish in transmission gear [17] and the photoelectric commutator [13], when liquid is flowed through measuring chute [12] by siphunculus, waist wheel [15] is subjected to the masterpiece directed movement, drive the opto-electronic conversion disc spins, the aperture that is evenly distributed on the opto-electronic conversion dish constantly cuts off and the conducting light beam, by producing pulse signal after the photelectric receiver acceptance, the output circuit of photelectric receiver is connected with amplifier counter [6] input end, amplifier counter [6] is connected with microprocessor CPU [7], by the signal of photelectric receiver output through amplifier counter [6] and microprocessor CPU [7] processing and amplifying, the frequency division computing is delivered to the display [8] that is connected with microprocessor CPU [7] at last and is shown.Realized the metering of fluid.
The utlity model has easy to use, accurate measurement, the characteristics such as not fragile.

Claims (2)

1, a kind of intelligent Fluid meter, comprise the amplifier counter, discharge circuit, display driver circuit, circuit power, microprocessor CPU and display, it is characterized in that: it also includes measuring chute, magnetoelastic transducer, the amplifier counter, microprocessor CPU and display, measuring chute is the siphunculus that two ends have ring flange, in turbine is housed, middle part at measuring chute is provided with magnetoelastic transducer, magnetoelastic transducer is a round box, in coil and magnetic core are housed, the head of magnetoelastic transducer stretches in the measured hole at measuring chute loam cake middle part, magnetoelastic transducer output circuit end is connected with amplifier counter input end, the amplifier counter output is connected with microprocessor CPU, and the microprocessor CPU of making signal Processing is connected with display.
2, a kind of intelligent Fluid meter, comprise the amplifier counter, discharge circuit, display driver circuit, circuit power, microprocessor CPU and display, it is characterized in that: it also includes measuring chute, photoelectric commutator, the amplifier counter, microprocessor CPU and display, photoelectric commutator is by photoemitter, photelectric receiver and one is formed by central shaft and at the opto-electronic conversion dish that periphery has a through hole, measuring chute is the siphunculus that two ends have ring flange, the waist wheel is housed in the measuring chute, the waist wheel shaft is connected by the central shaft of transmission gear with the opto-electronic conversion dish, when being subjected to the masterpiece directed movement, the waist wheel drives the opto-electronic conversion disc spins, opto-electronic conversion dish periphery is provided with the pore area that can cut off and connect the light beam that photoemission cell sends, photoemitter is relative with photelectric receiver to be installed, be equipped with the opto-electronic conversion dish that can cut off and connect light beam in the position between them, the output circuit of photelectric receiver is connected with amplifier counter input end, the amplifier counter is connected with microprocessor CPU, and the microprocessor CPU of doing the signal operation processing is connected with display.
CN 98231045 1998-07-10 1998-07-10 Fluid meter Expired - Fee Related CN2383043Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 98231045 CN2383043Y (en) 1998-07-10 1998-07-10 Fluid meter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 98231045 CN2383043Y (en) 1998-07-10 1998-07-10 Fluid meter

Publications (1)

Publication Number Publication Date
CN2383043Y true CN2383043Y (en) 2000-06-14

Family

ID=33980516

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 98231045 Expired - Fee Related CN2383043Y (en) 1998-07-10 1998-07-10 Fluid meter

Country Status (1)

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CN (1) CN2383043Y (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103217931A (en) * 2012-01-18 2013-07-24 启碁科技股份有限公司 Meter device, scaling network and scaling method of scaling network
CN104568032A (en) * 2015-01-23 2015-04-29 北京奥特美克科技股份有限公司 Magneto-electrical flow meter
CN111198009A (en) * 2020-01-14 2020-05-26 秦亚州 Coal gas sleeve wheel explosion-proof waist wheel flowmeter based on steam medium fluid

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103217931A (en) * 2012-01-18 2013-07-24 启碁科技股份有限公司 Meter device, scaling network and scaling method of scaling network
CN103217931B (en) * 2012-01-18 2016-03-02 启碁科技股份有限公司 Metering device, scale network and its scale method
CN104568032A (en) * 2015-01-23 2015-04-29 北京奥特美克科技股份有限公司 Magneto-electrical flow meter
CN111198009A (en) * 2020-01-14 2020-05-26 秦亚州 Coal gas sleeve wheel explosion-proof waist wheel flowmeter based on steam medium fluid

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C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee